Late Quaternary–Recent intraplate topographic uplift of the St. Francois Mountains (Ozark Plateau), Missouri (USA), driven by differential density and erosion

Author:

Kim Dong-Eun12,Weber John3,Seong Yeong Bae1,Reminga-DeYoung Katy3,Yu Byung Yong4

Affiliation:

1. 1Department of Geography, Korea University, Seoul 02841, Korea

2. 2Active Tectonics Research Center, Korea Institute of Geoscience and Mineral Resources, Daejeon 34132, Korea

3. 3Department of Geology, Grand Valley State University, Allendale, Michigan 49401, USA

4. 4Korea Institute of Science and Technology, Seoul 02792, Korea

Abstract

AbstractThe origin of relatively high topography in intraplate settings is elusive. The St. Francois Mountains, a tectonically inactive region with high relief, a Mesoproterozoic granite and rhyolite core, and Paleozoic sedimentary flanks, provide insights into the evolution of intraplate landscapes. We determined 14 in situ10Be exposure ages, 23 10Be catchment-wide denudation rates (CWDRs), and geomorphic indices using a geographic information system, and we modeled surface uplift using an isostatic-flexure model. CWDRs varied from ~5 to 10 ± 1.7 mm/k.y. and averaged 1.5 times greater in streams draining granite and rhyolite than in those draining flanking sedimentary rocks. In situ results from bedrock strath terraces gave Quaternary incision ages and incision rates that were tenfold higher than CWDRs. Major knickpoints (locally called shut-ins), all at 200 ± 70 m elevation, are located at contacts between the igneous and sedimentary rocks. Our exposure and denudation results inform isostatic-flexural modeling, which together support the conclusion that late Quaternary–Recent surface uplift driven by differential density and erosion focused in the igneous core is creating significant topography and relief in this intraplate setting.

Publisher

Geological Society of America

Subject

Geology

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